Moxa smoke cigarette purifier with quick-change modules

The quick-replacement design of the integrated high-temperature treatment module solves the problems of complex and high-cost maintenance of the high-temperature module in the existing moxa smoke purification device, achieving the effects of simplifying maintenance, reducing costs and extending equipment life.

CN116123547BActive Publication Date: 2025-09-12SIMAIRUI BEIJING TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202210055959.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-11-12
Filing Date
2022-01-18
Publication Date
2025-09-12
Estimated Expiration
2042-01-18

AI Technical Summary

Technical Problem

The high-temperature combustion unit and high-temperature catalytic unit in the existing moxa smoke purification device are complicated and costly to repair, have a short working life, and are difficult to disassemble and replace conveniently and quickly, which affects the safety and service life of the equipment.

Method used

An integrated high-temperature processing module is adopted, including a heat shield, a high-temperature combustion unit and a high-temperature catalytic unit. The design of quick plug-in electrical connection and detachable sealed connection enables rapid replacement of the high-temperature combustion unit and the high-temperature catalytic unit. Combined with the control module and cooling module, the maintenance process is simplified and safety is ensured.

Benefits of technology

It achieves efficient purification of moxa smoke, simplifies the repair and maintenance process, reduces costs, extends the service life of the equipment, and ensures safety and purification effects.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116123547B_ABST
    Figure CN116123547B_ABST
Patent Text Reader

Abstract

The present invention provides an wormwood smoke cigarette purifier with quickly replaceable modules, comprising a housing, an integrated high-temperature processing module, a cooling module and a control module. The integrated high-temperature processing module comprises a heat shield and a high-temperature combustion unit and a high-temperature catalytic unit arranged therein, which are interconnected and can be quickly plugged and electrically connected to the control module. The high-temperature catalytic unit is quickly detachably and sealedly connected to the cooling module. A smoke inlet channel and a smoke exhaust channel are provided in the housing. The smoke inlet channel is quickly detachably and sealedly connected to the head end of the heat shield, the cooling module is sealedly connected to the end of the heat shield, and the smoke exhaust channel is sealedly connected to the cooling module. The wormwood smoke cigarette purifier with quickly replaceable modules of the present invention has a simple structure, low cost, and is convenient and quick to replace the integrated high-temperature processing module. It does not take up too much time and energy for repair and maintenance, ensures safety, and effectively extends the service life of the overall equipment.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a purifier, in particular to a moxa smoke cigarette purifier with quickly replaceable modules. Background Art

[0002] As people's living standards continue to improve, they are paying more and more attention to their health. More and more Chinese medicine hospitals, Chinese and Western medicine hospitals, and Chinese medicine departments within hospitals are becoming increasingly popular. More and more people are beginning to engage in Chinese medicine physiotherapy, such as massage, cupping, moxibustion, and acupuncture, which are becoming part of people's careers. Some families also use moxibustion boxes for daily health care. However, because moxibustion sticks do not burn with an open flame, but rather with incomplete combustion, the resulting moxa smoke contains a large amount of particulate matter and some harmful substances. Excessive inhalation can affect health, especially in Chinese medicine hospitals or Chinese medicine departments where a large number of people are performing moxibustion simultaneously. This produces a large amount of smoke, which can have an adverse effect on the health of both patients and doctors.

[0003] The moxa smoke purification device purifies moxa smoke by burning moxa smoke at high temperature and catalyzing the moxa smoke produced during moxibustion at high temperature. The device is mainly composed of a high-temperature combustion unit, a high-temperature catalytic unit, a cooling module, a filtering module and a control module. Among them, the high-temperature combustion unit and the high-temperature catalytic unit are the two core functional modules of the device.

[0004] Because the high-temperature combustion unit and the high-temperature catalytic unit operate at high temperatures, they are prone to failure. The high-temperature combustion unit installs a high-temperature heating element in the corresponding combustion chamber, while the high-temperature catalytic unit installs a high-temperature catalyst in the corresponding catalytic chamber. The high-temperature combustion unit and the high-temperature catalytic unit, either as a whole or in parts, are each encased in a thermal insulation layer that completely encases the two modules. To replace the high-temperature heating element in the high-temperature combustion unit or the high-temperature catalyst in the high-temperature catalytic unit, the outer insulation layer must be removed, followed by disconnecting all electrical connections between the two modules, including the heating power supply and temperature sensor wiring. The pipe connection between the two modules, as well as the four connections to the smoke inlet pipe and the cooling module pipe, must also be disconnected. Finally, the faulty heating element or catalyst must be removed from the combustion chamber or catalytic chamber for repair or replacement. The repair and replacement process is complex and tedious. Furthermore, due to the nature of their operation, both the high-temperature combustion unit and the high-temperature catalytic unit have a shorter service life than other modules in the device, necessitating regular replacement. If these two high-temperature modules malfunction, they must be disconnected from the moxa smoke pipes. However, when the equipment is operating, these pipes contain high-temperature gases, requiring sealing and insulation, as well as disconnection from the power supply circuit, sensors, and control circuits. Therefore, disassembly and installation require high safety requirements. Replacing the high-temperature combustion unit and high-temperature catalytic unit typically requires a professional repair facility, which is costly and inconvenient. Summary of the Invention

[0005] The purpose of the present invention is to overcome the technical problems in the prior art and provide a cigarette purifier with a relatively simple structure, cost-saving, effective flue gas treatment, and an integrated high-temperature treatment module as the core functional module that can be easily and quickly disassembled and replaced. It does not take up too much time and energy for repair and maintenance, ensures safety and effectively extends the service life of the entire equipment. It has a quick-replaceable module.

[0006] The technical solution of the moxa smoke cigarette purifier with quickly replaceable modules of the present invention is as follows: it includes a shell, an integrated high-temperature processing module, a cooling module and a control module, the integrated high-temperature processing module includes a heat insulation cover, a high-temperature combustion unit and a high-temperature catalytic unit, the high-temperature combustion unit and the high-temperature catalytic unit are arranged in sequence in the heat insulation cover from front to back, the high-temperature combustion unit and the high-temperature catalytic unit are interconnected and electrically connected to the control module, the high-temperature combustion unit and the high-temperature catalytic unit can be quickly plugged in and electrically connected to the control module, the rear end of the heat insulation cover is quickly detachably and sealedly connected to the cooling module, a flue gas intake channel and a flue gas exhaust channel connected to the outside world are provided in the shell, the flue gas intake channel is quickly detachably and sealedly connected to the front end of the heat insulation cover where the high-temperature combustion unit is provided, the cooling module is sealedly connected to the rear end of the heat insulation cover where the high-temperature catalytic unit is provided, and the flue gas exhaust channel is sealedly connected to the cooling module.

[0007] The moxa smoke purifier with quick-change modules of the present invention can also be:

[0008] The front end of the heat shield is releasably sealed and connected to the smoke inlet channel via a detachable quick-change connection device, and the front end of the heat shield is quickly plug-in electrically connected to the control module via a quick electrical connection connector assembly.

[0009] The detachable quick-change connection device includes a fixed disk or a front sub-flange, which is located at the front end of the heat insulation cover. The fixed disk or the front sub-flange is sealed and detachably fixed to the rear end of the flue gas inlet channel. The fixed disk or the front sub-flange is provided with a flue gas passage, and the flue gas passage seal connects the high-temperature combustion unit in the front end of the heat insulation cover and the flue gas inlet channel. The quick electrical connection connector assembly includes a group of plug-in terminal block female heads and a group of plug-in terminal block male heads. The plug-in terminal block female heads are provided at the lower part of the heat insulation cover. The plug-in terminal block female heads are electrically connected to the high-temperature combustion unit and the high-temperature catalytic unit. All the plug-in terminal block male heads are electrically connected to the control module.

[0010] A frustum-type guide body with a size gradually decreasing from top to bottom is provided in the middle or edge of the lower part of the fixed plate, and a docking frustum groove is provided at a corresponding position on the flue gas inlet channel, and the guide body and the docking frustum groove are sealed and detachably docked; or a step is provided on the front sub-flange, and a front mother flange corresponding to the step is provided at a corresponding position on the flue gas inlet channel, and the front sub-flange and the above-mentioned front mother flange are sealed and detachably docked.

[0011] The lower part or the upper part of the male plug-in terminal block is provided with a wiring spring piece, and the female plug-in terminal block is electrically connected to the male plug-in terminal block in an elastic and releasable manner through the wiring spring piece.

[0012] The rear end of the heat insulation cover is detachably sealed and fixed to the cooling module through a rear female-female flange group. The rear female-female flange group includes a rear sub-flange and a rear female flange. The end of the heat insulation cover is provided with the rear sub-flange with n convex steps, n≥1, and the cooling module is provided with the corresponding rear female flange with n concave steps. The rear sub-flange is docked with the female-female port of the rear female flange, and the rear sub-flange is detachably and sealedly connected to the rear female flange.

[0013] The heat insulation cover includes a shell, a smoke guide pipe and an insulation layer. The smoke guide pipe is located inside the shell and extends from the front end of the shell to the rear end of the shell. The insulation layer is located between the inner wall of the shell and the outer wall of the smoke guide pipe. The high-temperature combustion unit and the high-temperature catalytic unit are located in the smoke guide pipe. The front end of the smoke guide pipe is removably sealed and connected to the smoke intake channel through a detachable quick-change connection device. The front end of the smoke guide pipe is detachably fixedly connected to the smoke intake channel. The front end of the shell is elastically and quickly plug-in electrically connected to the control module through a quick electrical connection connector assembly. The rear end of the shell is detachably fixed to the cooling module.

[0014] A temperature sensor is provided in the smoke guide pipe, and the temperature sensor is provided between the high-temperature combustion unit and the high-temperature catalytic unit. The temperature sensor is electrically connected to the control module through a quick electrical connection connector assembly.

[0015] A temperature switch is provided on the outside of the shell, and the temperature switch is connected to an external main power supply.

[0016] The high-temperature combustion unit includes a combustion chamber and a heating element located in the combustion chamber. The heating element is connected to the control module via a quick electrical connection connector assembly. The combustion chamber is communicated with the flue gas inlet channel.

[0017] The high-temperature catalytic unit includes a catalytic chamber and a catalytic element located in the catalytic chamber. The catalytic chamber is communicated with the high-temperature combustion unit, and the catalytic chamber is sealed and communicated with the cooling module.

[0018] A filter module is provided between the cooling module and the smoke exhaust channel. The filter module includes a filter chamber and a filter device located in the filter chamber. One end of the filter module is sealed and connected to the cooling module, and the other end of the filter module is sealed and connected to the smoke exhaust channel.

[0019] The heat shield is provided with a traceability QR code or a traceability chip for tracing information.

[0020] A reminder module is provided in the housing and is connected to the control module.

[0021] The invention relates to a cigarette purifier for moxa smoke with a quick-change module, comprising a housing, an integrated high-temperature processing module, a cooling module, and a control module. The integrated high-temperature processing module comprises a heat shield, a high-temperature combustion unit, and a high-temperature catalytic unit. The high-temperature combustion unit and the high-temperature catalytic unit are sequentially arranged in the heat shield from front to back. The high-temperature combustion unit and the high-temperature catalytic unit are interconnected and electrically connected to the control module. The high-temperature combustion unit and the high-temperature catalytic unit can be quickly plugged into the control module. The rear end of the heat shield is in a quickly detachable sealed connection with the cooling module. The housing is provided with a flue gas intake channel and a flue gas exhaust channel that are connected to the outside world. The flue gas intake channel is in a quickly detachable sealed connection with the front end of the heat shield where the high-temperature combustion unit is arranged. The cooling module is in a sealed connection with the rear end of the heat shield where the high-temperature catalytic unit is arranged. The flue gas exhaust channel is in a sealed connection with the cooling module. In this way, the housing protects the various modules and devices inside, avoiding external pollution and interference, while also ensuring the safety of outside personnel. The integrated high-temperature treatment module, a quickly removable and replaceable component, not only performs the high-temperature combustion of moxa smoke but also allows for prompt replacement if damaged or its purification effect is ineffective. The integrated high-temperature treatment module includes a heat shield to isolate the high temperature. This sealed shield prevents leakage of high-temperature gases within the shield. The high-temperature combustion unit heats the moxa smoke, ensuring its complete combustion and purification. The high-temperature catalytic unit further catalyzes the combustion and purification process. The moxa smoke and cigarette smoke undergo a series of high-temperature combustion and catalytic reactions, resulting in a thorough purification process. This achieves excellent purification results, removes non-toxic and harmless gases, and meets environmental standards while protecting the health of nearby personnel. The heat shield effectively blocks the intense heat from the high-temperature combustion and catalytic units, preventing leakage of gases, which can reach temperatures exceeding 600 degrees Celsius, from damaging the equipment and potentially scalding people, animals, and plants. The heat shield is a three-dimensional insulated tube or box made of high-temperature insulating material. The insulating material can be high-temperature ceramic fiber, high-temperature non-asbestos fiber, or other high-temperature resistant materials. The three-dimensional insulation tube or box, made of the high-temperature-resistant materials listed above, can be sealed around the high-temperature combustion unit and high-temperature catalytic device, with its head and tail ends sealedly electrically connected and communicating with the other components. This insulates internal heat from dissipating while also being flame-resistant, preventing flames from leaking out of the high-temperature combustion unit and high-temperature catalytic device and damaging the entire device.The control module is used to control the operation of the entire device. The control module can be a currently common control system, which mainly realizes the circuit closing and disconnection, power supply and power off, temperature control, etc. of the electronic components. The control module in the present invention includes a conventional control chip, a circuit board and a power supply system, etc. The high-temperature combustion unit wire passes through the front end of the heat insulation cover and is sealed and electrically connected to the control module. In this way, the control module controls the operation of the high-temperature combustion unit, and the moxa smoke and cigarette smoke enter the high-temperature combustion unit and the high-temperature catalytic unit, and are harmlessly treated after combustion and catalysis, and then enter the cooling module for cooling, and the cooled gas is discharged. A smoke intake channel and a smoke exhaust channel connected to the outside world are provided in the shell. The function of the smoke intake channel is to draw the moxa smoke and cigarette smoke generated by moxibustion in the outside world into the device and then let the moxa smoke and smoke pass through the front end of the heat insulation cover into the high-temperature combustion unit and the high-temperature catalytic unit for harmless treatment. The harmless smoke after treatment is cooled by the cooling module and discharged to the outside world from the smoke exhaust channel. Since the high-temperature combustion unit and the high-temperature catalytic unit are all connected or communicated with the control module and the front end of the high-temperature combustion unit and the heat shield in a quickly detachable sealed manner, and the rear end of the heat shield is also connected to the cooling module in a quickly detachable manner, this ensures that the heat shield can be quickly detached and replaced between the smoke inlet channel and the cooling module, without having to remove the heat shield and then remove the internal high-temperature combustion unit and high-temperature catalyst unit for separate maintenance. Instead, the entire integrated high-temperature treatment module, the core functional module, only needs to be directly removed and replaced. This makes disassembly and replacement convenient and quick. Moreover, because the entire unit can be quickly disassembled and installed at one time, it effectively saves repair and maintenance time and costs. At the same time, it can effectively ensure the sealing and safety of the heat shield, thereby ensuring the safety of the entire device and extending the life of the entire device. The advantages of the moxa smoke purifier with quickly replaceable modules compared to the prior art are: a relatively simple structure, cost savings, effective smoke purification, the ability to easily and quickly remove and replace the integrated high-temperature treatment module, the core functional module, without taking up too much repair and maintenance time and energy, ensuring safety, and effectively extending the service life of the entire device. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 Schematic diagram of an embodiment of a moxa smoke purifier with quickly replaceable modules according to the present invention;

[0023] Figure 2 Moxa smoke purifier with quick module replacement capability Figure 1 Enlarged view of part A in the middle;

[0024] Figure 3 Moxa smoke purifier with quick module replacement capability Figure 1 Enlarged view of part B in the middle.

[0025] Figure 4 Moxa smoke purifier with quick module replacement capability Figure 1 Schematic diagram of part B in the middle.

[0026] Figure 5 Moxa smoke purifier with quick module replacement capability Figure 1 Enlarged view of part C in the middle.

[0027] Figure 6 An enlarged view of the front end of the heat shield and the smoke inlet channel of another embodiment of the moxa smoke purifier with quickly replaceable modules of the present invention.

[0028] Description of the figure number:

[0029] 1…Casing 2…Heat shield 3…Smoke inlet duct

[0030] 4...Filter module 5...Catalytic chamber 6...Catalytic element

[0031] 7...Combustion chamber 8...Heating element 9...Fixed plate

[0032] 10…Cooling module 11…Control module 12…Smoke exhaust channel

[0033] 13…Temperature sensor 14…Rear sub-flange 15…Rear female flange

[0034] 16… Female plug-in terminal block 17… Male plug-in terminal block 18… Guide

[0035] 19… Docking cone groove 20… Wiring spring 21… Housing

[0036] 22...Smoke guide pipe 23...Insulation layer 24...Guide seat

[0037] 25…fixture DETAILED DESCRIPTION

[0038] The present invention will be further described in detail below with reference to the accompanying drawings and in combination with specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0039] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6The integrated high-temperature processing module comprises a housing 1, an integrated high-temperature processing module, a cooling module 10, and a control module 11. The integrated high-temperature processing module includes a heat shield 2, a high-temperature combustion unit, and a high-temperature catalytic unit. The high-temperature combustion unit and the high-temperature catalytic unit are sequentially arranged within the heat shield 2 from front to back. The high-temperature combustion unit and the high-temperature catalytic unit are interconnected and electrically connected to the control module 11. The high-temperature combustion unit and the high-temperature catalytic unit can be quickly plugged into the control module 11. The rear end of the heat shield 2 is in sealed communication with the cooling module 10 in a quickly removable manner. The housing 1 is provided with a flue gas intake channel 3 and a flue gas exhaust channel 12, which are connected to the outside world. The flue gas intake channel 3 is in sealed communication with the front end of the heat shield 2, where the high-temperature combustion unit is located. The cooling module 10 is in sealed communication with the rear end of the heat shield 2, where the high-temperature catalytic unit is located. The flue gas exhaust channel 12 is in sealed communication with the cooling module 10. In this way, the housing 1 protects the internal devices and other components from external contamination and interference, while also ensuring the safety of personnel outside. The integrated high-temperature treatment module is a component that can be quickly disassembled and replaced. On the one hand, it can realize the function of high-temperature combustion of moxa smoke. On the other hand, it can be replaced in time when it is damaged or the purification effect is not obvious. The integrated high-temperature treatment module includes a heat shield 2 for isolating high temperature. The heat shield 2 is a sealed cover to prevent the leakage of high-temperature gas in the heat shield 2. The function of the high-temperature combustion unit is to heat the moxa smoke passing through so that it is fully burned, thereby achieving a purification effect. The function of the high-temperature catalytic unit is to further catalyze the combustion effect and further purify the moxa smoke entering its unit. The moxa smoke and cigarette smoke are fully purified after high-temperature full combustion and catalytic reaction from front to back. The purification effect is good, non-toxic and harmless gases are eliminated, and environmental protection standards are met while ensuring the health of surrounding people. The function of the heat shield 2 is to fully block the high temperature of the high-temperature combustion unit and the high-temperature catalytic unit to prevent the leakage of high-temperature gases of up to more than 600 degrees from damaging the equipment and scalding outsiders or animals, plants and other creatures. The heat shield 2 is a three-dimensional heat-insulating tube or box made of a high-temperature insulating material. The high-temperature insulating material can be high-temperature ceramic fiber, high-temperature non-asbestos fiber, or other high-temperature resistant materials. The three-dimensional heat-insulating tube or box made of the high-temperature resistant materials listed above can be sealed around the high-temperature combustion unit and high-temperature catalytic device, with the head and tail ends respectively sealedly electrically connected and communicating with other components. This shield can isolate internal heat from dissipating and simultaneously provide flame retardancy, preventing leakage of flames from the high-temperature combustion unit and high-temperature catalytic device and damaging the entire device.The control module 11 is used to control the operation of the entire device. The control module 11 can be a currently common control system, which mainly realizes the circuit closing and opening, power supply and power off, temperature control, etc. of the electronic components. The control module 11 in the present invention includes a conventional control chip, circuit board, and power supply system, etc. The wires of the high-temperature combustion unit pass through the front end of the heat shield 2 and are sealed and electrically connected to the control module 11. In this way, the control module 11 controls the operation of the high-temperature combustion unit, and the moxa smoke and cigarette smoke enter the high-temperature combustion unit and the high-temperature catalytic unit, undergo combustion and catalysis, and then enter the cooling module 10 for cooling. The cooled gas can be discharged. The housing 1 is provided with a smoke intake channel 3 and a smoke exhaust channel 12 that are connected to the outside world. The function of the smoke intake channel 3 is to draw the moxa smoke and cigarette smoke generated by moxibustion from the outside into the device, and then allow the moxa and cigarette smoke to pass through the front end of the heat shield 2 and enter the high-temperature combustion unit and the high-temperature catalytic unit for harmless treatment. The harmless smoke after treatment is cooled by the cooling module 10 and discharged to the outside world through the smoke exhaust channel 12. Since the high-temperature combustion unit and the high-temperature catalytic unit are all connected or communicated with the control module 11 and the front end of the high-temperature combustion unit and the heat shield 2 in a quickly detachable sealed manner, and the rear end of the heat shield 2 is also connected to the cooling module 10 in a quickly detachable manner, this ensures that the heat shield 2 can be quickly disassembled and replaced between the smoke inlet channel 3 and the cooling module, without having to disassemble the heat shield 2 and then disassemble the internal high-temperature combustion unit and high-temperature catalyst unit for separate maintenance. Instead, the entire integrated high-temperature treatment module, the core functional module, only needs to be directly disassembled and replaced. This makes disassembly and replacement convenient and quick. Moreover, because the entire unit can be quickly disassembled and installed at one time, it effectively saves maintenance time and cost. At the same time, it can effectively ensure the sealing and safety of the heat shield 2, thereby ensuring the safety of the entire device and extending the life of the entire device. The advantages of the moxa smoke purifier with quickly replaceable modules compared to the prior art are: a relatively simple structure, cost savings, effective smoke purification, the ability to easily and quickly disassemble and replace the integrated high-temperature treatment module, the core functional module, without taking up too much maintenance time and effort, ensuring safety, and effectively extending the service life of the entire device.

[0040] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6Based on the previous technical solution, the front end of the heat shield 2 can be releasably sealed and connected to the flue gas inlet passage 3 via a detachable quick-change connection device, and the front end of the heat shield 2 can be quickly plugged into and removed from the flue gas inlet passage 3. At the front end of the heat shield 2, the high-temperature combustion unit and the high-temperature catalytic unit can be quickly plugged into and removed from the flue gas inlet passage 3 via the quick-connect electrical connector assembly. This ensures that when removing and replacing the integrated high-temperature treatment module, the heat shield 2 can be easily and quickly removed, and the electrical connections between the high-temperature combustion unit and the high-temperature catalytic unit can be disconnected simultaneously. This avoids the need to individually remove each circuit connector and each component when removing the heat shield 2, thereby improving the efficiency of the overall removal, replacement, and installation of the integrated high-temperature treatment module and the safety of subsequent equipment use. On the basis of the previous technical solution, a further preferred technical solution is: the detachable quick-change connection device includes a fixed disk 9 or a front sub-flange, the fixed disk 9 or the front sub-flange is located at the head end of the heat insulation cover 2, the fixed disk 9 or the front sub-flange is sealed and detachably fixed to the rear end of the flue gas inlet channel 3, and a flue gas passage is provided on the fixed disk 9 or the front sub-flange, and the flue gas passage is sealed to connect the high-temperature combustion unit in the front end of the heat insulation cover 2 and the flue gas inlet channel 3, the quick electrical connection connector assembly includes a group of plug-in terminal block female heads 16 and a group of plug-in terminal block male heads 17, the plug-in terminal block female heads 16 are arranged at the lower part of the heat insulation cover 2, the plug-in terminal block male heads 17 are arranged on the flue gas inlet channel 3, and the plug-in terminal block female heads 16 and the plug-in terminal block male heads 17 are elastically and releasably electrically connected. The fixed plate 9 or the front flange in the detachable quick-change connection device is mechanically sealed and connected to the smoke inlet channel 3, so that the external moxa smoke and cigarette smoke can enter the high-temperature heating unit in the heat insulation cover 2 after passing through the smoke inlet channel 3, and be fully burned after being heated at high temperature. Thereafter, they enter the high-temperature catalytic unit for catalytic reaction, further purifying the moxa smoke and cigarette smoke, and finally the moxa smoke and cigarette smoke are completely burned and discharged. During use, the moxa smoke and smoke enter the smoke passage from the smoke inlet channel 3 and then enter the high-temperature combustion unit. Since the three are sealed and connected in pairs, the moxa smoke and smoke will not leak from the connection between the heat insulation cover 2 and the smoke inlet channel 3, ensuring the safety of the entire device. The corresponding elastic and releasable electrical connections of the plug-in terminal block female head 16 and the plug-in terminal block male head 17 in the quick electrical connection connector assembly facilitate the connection of electrical components or electrical components in the high-temperature combustion unit and the high-temperature catalytic unit with the control module 11, and facilitate the electrical components to be controlled by the control system to power on, power off, and operate or stop.The plug-in terminal block female connector 16 and the plug-in terminal block male connector 17 are both arranged in a plurality of terminal blocks, and a terminal block method can also be used. Similar to the home, all of these plug-in terminal block female connectors 16 are arranged in the lower part of the heat shield 2. The plug-in terminal block female connector 16 is electrically connected to the high-temperature combustion unit and the high-temperature catalytic unit. The plug-in terminal block male connector 17 is electrically connected to the above-mentioned control module, which ensures that the control module can supply power to the high-temperature combustion unit and the high-temperature catalytic unit and enable the two to operate normally or stop operating. All of these plug-in terminal block male connectors 17 are arranged on the flue gas inlet channel 3. The plug-in terminal block female connector 16 is electrically connected to the components of the high-temperature combustion unit and the high-temperature catalytic unit. The plug-in terminal block male connector 17 is connected to the control module 11. This facilitates the electrical connection between the high-temperature combustion unit and the high-temperature catalytic unit in the heat shield 2 and the control module 11 when disassembling and installing the heat shield 2 and the flue gas inlet channel 3. That is, when the female connector 16 and the male connector 17 of the plug-in terminal block make contact, the connection is successful. When the female connector 16 and the male connector 17 of the plug-in terminal block lose contact—that is, when the heat shield 2 is removed—the operation of the electrical components within the high-temperature combustion unit and the high-temperature catalytic unit ceases. This eliminates the need to disconnect individual connecting wires when removing and installing the integrated high-temperature treatment module; direct docking is sufficient, significantly saving time and ensuring safe operation of the equipment. Based on the previous technical solution, a further preferred technical solution is: a frustum-shaped guide 18 with gradually decreasing dimensions from top to bottom is provided at the lower middle portion or edge of the fixed plate 9; a frustum-shaped docking groove 19 is provided at a corresponding position on the flue gas inlet passage 3; the guide 18 and the docking frustum-shaped groove 19 are sealed and removably docked; or a step is provided on the front sub-flange; a front female flange is provided at a corresponding position on the flue gas inlet passage; the front sub-flange and the front female flange are sealed and removably docked. The frustum-shaped guide body 18 and the docking frustum groove 19, or the front mother flange and the front sub-flange with steps, are provided in this way. Such a configuration facilitates the removal of the heat shield 2 and the docking components of the integrated high-temperature treatment module during disassembly, and also facilitates the docking and sealing of the heat shield 2 of the integrated high-temperature treatment module during installation. Both serve as guides. Based on the previous technical solution, a further preferred technical solution is that the fixed disk 9 is removably fixed to the flue gas inlet channel 3 by fixing bolts, fixing screws and the nuts. The fixed disk 9 itself can be removably fixed by fixing bolts, fixing screws and the nuts. Of course, the supporting device of the fixed disk can also be removably fixed by fixing bolts, fixing screws and the nuts. In this way, the fixed disk 9 or the front sub-flange can be sealed and fixed to the flue gas inlet channel 3.Of course, a sealing gasket or a sealing ring can also be provided between the fixed plate 9 and the above-mentioned smoke inlet channel 3, or a sealing gasket or a sealing ring can be provided between the front sub-flange and the front female flange, so as to ensure a sufficiently high sealing performance and avoid smoke leakage and danger. On the basis of the previous technical solution, a further preferred technical solution is: a wiring spring 20 is provided on the lower part or the upper part of the male plug-in terminal block, and the female plug-in terminal block 16 and the male plug-in terminal block 17 are electrically connected in an elastic and releasable manner through the wiring spring 20. In this way, when docking, the wiring spring 20 is used to press the docking tightly, ensuring that the electrical connection between the female plug-in terminal block 16 and the corresponding male plug-in terminal block 17 is tighter, ensuring the correct circuit connection. Based on the previous technical solution, a further preferred technical solution is as follows: the rear end of the heat shield 2 is removably and sealedly fixed to the cooling module 10 via a rear flange assembly. The rear flange assembly includes a rear sub-flange 14 and a rear female flange 15. The rear end of the heat shield 2 is provided with a rear sub-flange 14 having n convex steps, where n ≥ 1. The cooling module is provided with a corresponding rear female flange 15 having n concave steps. The rear sub-flange 14 and the rear female flange 15 are docked together, and the rear sub-flange 14 and the rear female flange 15 are removably and sealedly connected. In this way, the heat shield 2 and the cooling module can be docked conveniently and quickly, while ensuring the safety of equipment operation. The convex-step rear sub-flange 14 and the concave-step rear female flange 15 ensure accurate alignment and a sealed docking. A further preferred technical solution is: the rear sub-flange 14 and the rear mother flange 15 are fixed together by bolts or rotating screws or by compression. In addition, the rear sub-flange 14 and the rear mother flange 15 can be fixed together by bolts or rotating screws through the components they carry, and the bolts or rotating screws can be hand screws or bolts. This fixing method is more convenient. Based on the previous technical solution, a further preferred technical solution is: a sealing ring or sealing gasket can be provided on the connecting wall of the rear sub-flange 14 or the rear mother flange 15. The purpose of providing the sealing ring or sealing gasket is to further ensure the sealing effect, ensure that the overall device is safer and has a longer service life.

[0041] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6Based on the previous technical solution, the heat shield may also include a shell 21, a smoke guide tube 22, and a heat insulation layer 23. The smoke guide tube 22 is located within the shell 21 and extends from the front end to the rear end of the shell 21. The heat insulation layer 23 is located between the inner wall of the shell 21 and the outer wall of the smoke guide tube 22. The high-temperature combustion unit and the high-temperature catalytic unit are located within the smoke guide tube 22. The front end of the smoke guide tube 22 is releasably sealed and connected to the flue gas inlet channel 3 via a detachable quick-change connection device. The front end of the smoke guide tube 22 is detachably and fixedly connected to the flue gas inlet channel 3. The front end of the shell 21 is elastically and quickly pluggably electrically connected to the control module 11 via a quick electrical connector assembly. The rear end of the shell 21 is detachably and fixedly connected to the cooling module 10. The shell 21 facilitates the overall installation, removal, and transportation of the heat insulation layer 23, the smoke guide tube 22, and the high-temperature combustion unit and high-temperature catalytic unit within the smoke guide tube 22. Furthermore, during use, the safety hazards caused by high-temperature flue gas leakage can be effectively avoided, while also ensuring the service life of the cooling module 10, the filter module 4, and the control module 11. Based on the previous technical solution, a further preferred technical solution is: a temperature sensor 13 is installed in the smoke guide tube 22. The temperature sensor 13 is located between the high-temperature combustion unit and the high-temperature catalytic unit and is electrically connected to the control module 11 via a quick electrical connector assembly. The temperature sensor 13 transmits temperature information detected in the smoke guide tube 22 to the control module 11 in real time, facilitating the control module 11 to adjust the temperature in the smoke guide tube 22 and turn the power on and off. Based on the previous technical solution, a further preferred technical solution is: a temperature switch is installed on the outside of the housing 21 and is connected to an external main power supply. The temperature switch is a mechanical switch. When the temperature of the housing 21 reaches a predetermined limit, the temperature switch activates, automatically disconnecting the external main power supply from the high-temperature combustion unit and the high-temperature catalytic unit, directly cutting off the power supply. This provides an additional layer of protection in the event that the control module 11 malfunctions and becomes inoperative, similar to a fuse in an electrical circuit. Based on the previous technical solution, a further preferred technical solution is as follows: the front end of the housing 21 is expanded outwardly into an annular disk, and a guide seat 24 is provided at the rear end of the smoke inlet channel 3 at a position corresponding to the annular disk. The front end of the housing 21 is inserted and fixed to the guide seat 24 from top to bottom through the annular disk via a retainer 25. This makes the guide seat 24 and retainer 25 easier to install and remove.

[0042] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6On the basis of the previous technical solution, it can also be: the high-temperature combustion unit includes a combustion chamber 7 and a heating element 8 located in the combustion chamber 7, the heating element 8 is connected to the control module 11 through a quick electrical connection connector assembly, and the combustion chamber 7 is connected to the flue gas inlet channel 3. In this way, when the high-temperature combustion unit is in effect, the control module 11 controls the heating element 8 of the high-temperature combustion unit to start heating the moxa smoke entering the combustion chamber 7 to a high temperature and fully burn it, or stops running, etc. Of course, high-temperature combustion units with other structures can also be used to completely burn the moxa smoke, as long as the moxa smoke entering the combustion chamber 7 can be fully burned. On the basis of the previous technical solution, a further preferred technical solution is: a combustion bracket is provided in the combustion chamber 7, and the heating element 8 is detachably fixed on the combustion bracket. This makes it convenient for the heating element 8 to act more evenly on the moxa smoke.

[0043] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6 On the basis of the previous technical solution, it can also be: the high-temperature catalytic unit includes a catalytic chamber 5 and a catalytic element 6 located in the catalytic chamber 5, the catalytic chamber 5 is connected to the high-temperature combustion unit, and the catalytic chamber 5 is sealed and connected to the cooling module 10. In this way, the catalytic element 6 in the catalytic chamber 5 can catalytically react with the fully burned moxa smoke and flue gas entering the catalytic chamber 5, further purify the moxa smoke and cigarette flue gas, and then the purified flue gas enters the cooling module 10 for cooling before being discharged to the outside, completing the harmless treatment of the moxa smoke and flue gas. On the basis of the previous technical solution, a further preferred technical solution is: the combustion chamber 7 and the catalytic chamber 5 are arranged vertically up and down. In this way, because the moxa smoke and cigarette flue gas are gases, they naturally rise. When the combustion chamber 7 is below and the catalytic chamber 5 is above, the moxa smoke naturally rises, and under the action of negative pressure, after combustion, it naturally enters the catalytic chamber 5 from the combustion chamber 7 to complete the subsequent purification reaction. In this way, the purification rate should be higher and the energy consumption should be lower. Based on the previous technical solution, a further preferred technical solution is: a catalytic support is provided in the catalytic chamber 5, and the catalytic element 6 is detachably fixed to the catalytic support. This arrangement allows the catalytic element 6 supported by the catalytic support to contact a larger area of ​​the moxa smoke filling the catalytic chamber 5, thereby ensuring a higher purification rate of the moxa smoke.

[0044] The invention's moxa smoke purifier with quick-change modules can be found in the Figures 1 to 6Based on the previous technical solution, a filter module 4 may be provided between the cooling module 10 and the flue gas exhaust passage 12. The filter module 4 includes a filter chamber and a filter device located within the filter chamber. One end of the filter module 4 is in sealed communication with the cooling module 10, and the other end of the filter module 4 is in sealed communication with the flue gas exhaust passage 12. In this way, after the moxa smoke is purified, it enters the cooling module 10 for cooling. The cooled gas then passes through the filter chamber within the device and is filtered by the filter device, removing the residue of the burned moxa smoke before being discharged into the flue gas exhaust passage 12 and discharged to the outside world. This is more environmentally friendly and has a higher purification rate. Based on the previous technical solution, a further preferred technical solution is that a reminder module is provided within the housing 1, and the reminder module is connected to the control module 11. The reminder module can be an alarm, a warning light, or both. The reminder module is connected to the control system. When the control system detects that the integrated high-temperature processing module needs to be replaced or is damaged, the reminder module either issues an alarm or flashes a warning light to indicate that the integrated high-temperature processing module needs to be replaced. This makes the device more intuitive and convenient for users to better utilize. Based on the above technical solution, a further preferred technical solution is that the heat shield 2 is provided with a traceability QR code or traceability chip for tracing information. The traceability QR code or traceability chip is used to identify or input the system to determine whether the integrated high-temperature processing module is new, its factory information, etc., and to identify whether it is the integrated high-temperature processing module configured and used in the system.

[0045] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore cannot be understood as limiting the present invention.

[0046] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0047] While the above examples of the present invention are described in detail, these descriptions are merely preferred embodiments of the present invention and should not be construed as limiting the scope of the present invention. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to provide an exhaustive list of all possible embodiments. Obvious variations or modifications arising therefrom remain within the scope of the present invention.

Claims

1. A moxa smoke purifier with quick module replacement, characterized by: The invention comprises a shell, an integrated high-temperature processing module, a cooling module and a control module, wherein the integrated high-temperature processing module comprises a heat insulation cover, a high-temperature combustion unit and a high-temperature catalytic unit, wherein the high-temperature combustion unit and the high-temperature catalytic unit are sequentially arranged in the heat insulation cover from front to back, the high-temperature combustion unit and the high-temperature catalytic unit are communicated with each other and are electrically connected to the control module, the high-temperature combustion unit and the high-temperature catalytic unit can be quickly plugged into the control module for electrical connection, the rear end of the heat insulation cover can be quickly detachably and sealedly connected to the cooling module, a flue gas intake channel and a flue gas exhaust channel communicating with the outside are provided in the shell, the flue gas intake channel is quickly detachably and sealedly connected to the front end of the heat insulation cover provided with the high-temperature combustion unit, the cooling module is sealedly connected to the rear end of the heat insulation cover provided with the high-temperature catalytic unit, the flue gas exhaust channel is sealedly connected to the cooling module, the front end of the heat insulation cover is releasably and sealedly connected to the flue gas intake channel through a detachable quick-change connection device, and the front end of the heat insulation cover is connected to the The control module can be quickly plugged into the electrical connection, the detachable quick-change connection device includes a fixed disk or a front sub-flange, the fixed disk or the front sub-flange is located at the front end of the heat shield, the fixed disk or the front sub-flange is sealed and detachably fixed to the rear end of the flue gas inlet channel, the fixed disk or the front sub-flange is provided with a flue gas passage, the flue gas passage is sealed and connected to the high-temperature combustion unit in the front end of the heat shield and the flue gas inlet channel, the quick electrical connection connector assembly includes a set of plug-in terminal block female connectors and a set of plug-in The male connector of the terminal block and the female connector of the plug-in terminal block are arranged at the lower part of the heat insulation cover. The female connector of the plug-in terminal block is electrically connected to the high-temperature combustion unit and the high-temperature catalytic unit. All the male connectors of the plug-in terminal blocks are electrically connected to the control module. The heat insulation cover includes a shell, a smoke guide pipe and an insulation layer. The front end of the shell expands outward to form an annular disk, and a guide seat is provided at the rear end of the flue gas inlet channel at a position corresponding to the annular disk. The front end of the shell passes through the annular disk and is fixed to the guide seat through a fixer from top to bottom.

2. The moxa smoke purifier with a quick-change module according to claim 1, characterized in that: A frustum-type guide body with a size gradually decreasing from top to bottom is provided in the middle or edge of the lower part of the fixed plate, and a docking frustum groove is provided at a corresponding position on the flue gas inlet channel, and the guide body and the docking frustum groove are sealed and detachably docked; or a step is provided on the front sub-flange, and a front mother flange corresponding to the step is provided at a corresponding position on the flue gas inlet channel, and the front sub-flange and the above-mentioned front mother flange are sealed and detachably docked.

3. The moxa smoke purifier with a quick-change module according to claim 2, characterized in that: The lower part or the upper part of the male plug-in terminal block is provided with a wiring spring piece, and the female plug-in terminal block is electrically connected to the male plug-in terminal block in an elastic and releasable manner through the wiring spring piece.

4. The moxa smoke purifier with a quick-change module according to claim 1, characterized in that: The rear end of the heat insulation cover is detachably sealed and fixed to the cooling module through a rear female-female flange group. The rear female-female flange group includes a rear sub-flange and a rear female flange. The end of the heat insulation cover is provided with the rear sub-flange with n convex steps, n≥1, and the cooling module is provided with the corresponding rear female flange with n concave steps. The rear sub-flange is docked with the female-female port of the rear female flange, and the rear sub-flange is detachably and sealedly connected to the rear female flange.

5. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: The smoke guide pipe is located inside the shell and extends from the front end of the shell to the rear end of the shell, the heat insulation layer is located between the inner wall of the shell and the outer wall of the smoke guide pipe, the high-temperature combustion unit and the high-temperature catalytic unit are located in the smoke guide pipe, the front end of the smoke guide pipe is removably sealed and connected to the smoke intake channel through a detachable quick-change connection device, the front end of the smoke guide pipe is detachably fixedly connected to the smoke intake channel, the front end of the shell is elastically and quickly plug-in electrically connected to the control module through a quick electrical connection connector assembly, and the rear end of the shell is detachably fixed to the cooling module.

6. The moxa smoke purifier with a quick-change module according to claim 5, characterized in that: A temperature sensor is provided in the smoke guide pipe, and the temperature sensor is provided between the high-temperature combustion unit and the high-temperature catalytic unit. The temperature sensor is electrically connected to the control module via a quick electrical connection connector assembly.

7. The moxa smoke purifier with a quick-change module according to claim 6, characterized in that: A temperature switch is provided on the outside of the shell, and the temperature switch is connected to an external main power supply.

8. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: The high-temperature combustion unit includes a combustion chamber and a heating element located in the combustion chamber. The heating element is connected to the control module via a quick electrical connection connector assembly. The combustion chamber is communicated with the flue gas inlet channel.

9. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: The high-temperature catalytic unit includes a catalytic chamber and a catalytic element located in the catalytic chamber. The catalytic chamber is communicated with the high-temperature combustion unit, and the catalytic chamber is sealed and communicated with the cooling module.

10. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: A filter module is provided between the cooling module and the smoke exhaust channel. The filter module includes a filter chamber and a filter device located in the filter chamber. One end of the filter module is sealed and connected to the cooling module, and the other end of the filter module is sealed and connected to the smoke exhaust channel.

11. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: The heat shield is provided with a traceability QR code or a traceability chip for tracing information.

12. The moxa smoke purifier with a quick-change module according to any one of claims 1 to 4, characterized in that: A reminder module is provided in the housing and is connected to the control module.

Citation Information

Patent Citations

  • Moxa smoke cigarette purifier capable of rapidly replacing module

    CN217423274U